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The effect of titania doping on structure and mechanical properties of calcia-stabilized zirconia ceramic

机译:二氧化钛掺杂对钙稳定氧化锆陶瓷结构和力学性能的影响

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The effect of titania doping on density, phase composition, and mechanical properties of calcia-stabilized tetragonal zirconia ceramics (Ca-TZP) was investigated. The samples were prepared via milling, spray drying and consequent uniaxial pressing of the powders of the chosen composition. The concentrations of titania of up 1?mol% were investigated. Addition of titania moderately improved relative density of the sintered ceramics from 98.2% in titania-free material to 99.3% in 0.5?mol% titania ceramic. Introduction of titania resulted in increase of transformability of tetragonal zirconia phase deduced from the change of lattice parameters and content of monoclinic zirconia phase on fracture surfaces. It was revealed that hardness of titania-doped Ca-TZP decreased from 12.2?GPa in undoped ceramic to 11.3?GPa in material with 0.75?mol% titania. Fracture toughness, on the contrary, demonstrated a clear extremum of 9.1?MPa·m0.5in 0.5–0.65?mol% titania range as compared to ~5?MPa·m0.5in undoped Ca-TZP.
机译:研究了二氧化钛对钙稳定四方氧化锆陶瓷(CA-TZP)的密度,相组合物和力学性能的影响。通过研磨,喷雾干燥和随后的所选组合物的粉末的单轴压制制备样品。研究了Up 1?Mol%的二氧化钛的浓度。添加二氧化钛的添加烧结陶瓷的相对密度从98.2%的二氧化钛材料中的98.2%到0.5Ω·摩尔%的二氧化钛陶瓷中的99.3%。二氧化钛的引入导致从晶格参数的变化和裂缝表面上单斜氧化锆相的变化所推断的四方氧化锆相的可变形性的增加。据透露,二氧化钛的Ca-TZP的硬度从12.2〜GPA中的未掺杂陶瓷含量降低至11.3μl≤11.3μmΔGPA,其材料为0.75Ω·摩尔%的二氧化钛。相反,断裂韧性证明了9.1℃的透明极值0.5-0.65?MOL%的二氧化钛范围与〜5?M0.5英寸未掺杂Ca-TZP相比。

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